BSI PD CEN/CLC/TR 17603-31-04:2021
$215.11
Space Engineering. Thermal design handbook – Conductive Heat Transfer
Published By | Publication Date | Number of Pages |
BSI | 2021 | 158 |
This Part 4 of the spacecraft thermal control and design data handbooks, provides information on calculating the conductive heat transfer rate for a variety of two and three-dimensional configurations.
Calculations for the conductance of the interface between two surfaces (joints) require special consideration and are included as a separate clause.
The Thermal design handbook is published in 16 Parts
TR 17603-31-01 Thermal design handbook – Part 1: View factors
TR 17603-31-02 Thermal design handbook – Part 2: Holes, Grooves and Cavities
TR 17603-31-03 Thermal design handbook – Part 3: Spacecraft Surface Temperature
TR 17603-31-04 Thermal design handbook – Part 4: Conductive Heat Transfer
TR 17603-31-05 Thermal design handbook – Part 5: Structural Materials: Metallic and Composite
TR 17603-31-06 Thermal design handbook – Part 6: Thermal Control Surfaces
TR 17603-31-07 Thermal design handbook – Part 7: Insulations
TR 17603-31-08 Thermal design handbook – Part 8: Heat Pipes
TR 17603-31-09 Thermal design handbook – Part 9: Radiators
TR 17603-31-10 Thermal design handbook – Part 10: Phase – Change Capacitors
TR 17603-31-11 Thermal design handbook – Part 11: Electrical Heating
TR 17603-31-12 Thermal design handbook – Part 12: Louvers
TR 17603-31-13 Thermal design handbook – Part 13: Fluid Loops
TR 17603-31-14 Thermal design handbook – Part 14: Cryogenic Cooling
TR 17603-31-15 Thermal design handbook – Part 15: Existing Satellites
TR 17603-31-16 Thermal design handbook – Part 16: Thermal Protection System
PDF Catalog
PDF Pages | PDF Title |
---|---|
2 | undefined |
13 | 1 Scope |
14 | 2 References |
15 | 3 Terms, definitions and symbols 3.1 Terms and definitions 3.2 Abbreviated terms 3.3 Symbols |
17 | 4 Conductive shape factors 4.1 General |
18 | 4.2 Planar-planar surfaces 4.2.1 Two-dimensional configurations 4.2.1.1 Strips of equal width 4.2.1.2 Strips of unequal width |
20 | 4.3 Planar surface-cylindrical surface 4.3.1 Two-dimensional configurations 4.3.1.1 Plane and cylinder of rectangular cross section |
21 | 4.3.1.2 Plane and circular cylinder |
23 | 4.3.2 Axisymmetrical configuration 4.3.2.1 Plane and circular cylinder |
25 | 4.4 Planar surface-spherical surface 4.4.1 Plane and sphere |
27 | 4.5 Cylindrical-cylindrical surfaces 4.5.1 Two-dimensional configurations 4.5.1.1 Circular cylinders |
29 | 4.5.1.2 Circular rods with holes |
35 | 4.5.1.3 Rectangular bars with holes |
41 | 4.5.1.4 Polygonal bars with holes |
43 | 4.6 Spherical-spherical surfaces 4.6.1 Two concentric spheres |
45 | 5 Thermal joint conductance 5.1 General |
46 | 5.1.1 Empirical correlations 5.1.1.1 Fletcher & gyorog correlation |
49 | 5.1.1.2 Thomas & Probert correlation |
50 | 5.1.2 Thermal interface materials |
52 | 5.1.3 Joint geometries |
53 | 5.2 Bare metallic joints |
64 | 5.2.1 Metal-metal joints 5.2.1.1 Two equal materials |
79 | 5.2.1.2 Two different materials |
92 | 5.2.1.3 Multilayered joints |
93 | 5.2.1.4 Bolted joints |
96 | 5.2.2 Metal-composite joints |
98 | 5.2.3 Composite-composite joints |
100 | 5.3 Interfacial materials between metals 5.3.1 Metallic foils between metals 5.3.1.1 Similar metals |
107 | 5.3.1.2 Bolted joints |
111 | 5.3.2 Metallic oxide powders between similar metals 5.3.3 Porous metallic materials between similar metals. |
121 | 5.3.4 Insulating spacers between similar metals |
135 | 5.3.5 Fluids between metals 5.3.5.1 Similar metals |
139 | 5.3.5.2 Dissimilar metals |
144 | 5.3.6 Elastomeric spacers between similar metals |
147 | 5.3.6.1 Elastomeric thermal fillers |
153 | 5.4 Outgassing data |